BUK465-100A
BUK465-100A is PowerMOS transistor manufactured by NXP Semiconductors.
DESCRIPTION
N-channel enhancement mode field-effect power transistor in a plastic envelope suitable for surface mount applications. The device is intended for use in Switched Mode Power Supplies (SMPS), motor control, welding, DC/DC and AC/DC converters, and in general purpose switching applications.
QUICK REFERENCE DATA
SYMBOL VDS ID Ptot Tj RDS(ON) PARAMETER Drain-source voltage Drain current (DC) Total power dissipation Junction temperature Drain-source on-state resistance MAX. 100 26 125 175 0.08 UNIT V A W ˚C Ω
PINNING
- SOT404
PIN 1 2 3 mb gate drain source drain DESCRIPTION
PIN CONFIGURATION mb
SYMBOL d g
2 1 3 s
LIMITING VALUES
Limiting values in accordance with the Absolute Maximum System (IEC 134) SYMBOL VDS VDGR ±VGS ID ID IDM Ptot Tstg Tj PARAMETER Drain-source voltage Drain-gate voltage Gate-source voltage Drain current (DC) Drain current (DC) Drain current (pulse peak value) Total power dissipation Storage temperature Junction temperature CONDITIONS RGS = 20 kΩ Tmb = 25 ˚C Tmb = 100 ˚C Tmb = 25 ˚C Tmb = 25 ˚C MIN.
- 55 MAX. 100 100 30 26 18 104 125 175 175 UNIT V V V A A A W ˚C ˚C
THERMAL RESISTANCES
SYMBOL PARAMETER Rth j-mb Rth j-a Thermal resistance junction to mounting base Thermal resistance junction to ambient CONDITIONS MIN. minimum footprint FR4 board (see Fig 18). TYP. 50 MAX. 1.2 UNIT K/W K/W
February 1996
Rev 1.000
Philips Semiconductors
Product specification
Power MOS transistor
STATIC CHARACTERISTICS
Tmb = 25 ˚C unless otherwise specified SYMBOL V(BR)DSS VGS(TO) IDSS IDSS IGSS RDS(ON) PARAMETER Drain-source breakdown voltage Gate threshold voltage Zero gate voltage drain current Zero gate voltage drain current Gate source leakage current Drain-source on-state resistance CONDITIONS VGS = 0 V; ID = 0.25 m A VDS = VGS; ID = 1 m A VDS = 100 V; VGS = 0 V; Tj = 25 ˚C VDS = 100 V; VGS = 0 V; Tj =125 ˚C VGS = ±30 V; VDS = 0 V VGS = 10 V; ID = 13 A MIN. 100 2.1 TYP. 3.0 1 0.1 10 0.07 MAX. 4.0 10 1.0 100 0.08 UNIT V V µA...